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I2P: End-to-End encrypted and anonymous Internet
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767 lines
26 KiB
767 lines
26 KiB
#include <string.h> |
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#include <openssl/sha.h> |
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#include <openssl/hmac.h> |
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#include "I2PEndian.h" |
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#include "Crypto.h" |
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#include "Ed25519.h" |
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#include "Log.h" |
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#include "Timestamp.h" |
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#include "NetDb.hpp" |
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#include "Tunnel.h" |
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#include "LeaseSet.h" |
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namespace i2p |
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{ |
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namespace data |
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{ |
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LeaseSet::LeaseSet (bool storeLeases): |
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m_IsValid (false), m_StoreLeases (storeLeases), m_ExpirationTime (0), m_EncryptionKey (nullptr), |
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m_Buffer (nullptr), m_BufferLen (0) |
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{ |
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} |
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LeaseSet::LeaseSet (const uint8_t * buf, size_t len, bool storeLeases): |
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m_IsValid (true), m_StoreLeases (storeLeases), m_ExpirationTime (0), m_EncryptionKey (nullptr) |
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{ |
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m_Buffer = new uint8_t[len]; |
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memcpy (m_Buffer, buf, len); |
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m_BufferLen = len; |
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ReadFromBuffer (); |
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} |
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void LeaseSet::Update (const uint8_t * buf, size_t len, bool verifySignature) |
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{ |
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if (len > m_BufferLen) |
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{ |
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auto oldBuffer = m_Buffer; |
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m_Buffer = new uint8_t[len]; |
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delete[] oldBuffer; |
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} |
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memcpy (m_Buffer, buf, len); |
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m_BufferLen = len; |
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ReadFromBuffer (false, verifySignature); |
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} |
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void LeaseSet::PopulateLeases () |
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{ |
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m_StoreLeases = true; |
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ReadFromBuffer (false); |
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} |
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void LeaseSet::ReadFromBuffer (bool readIdentity, bool verifySignature) |
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{ |
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if (readIdentity || !m_Identity) |
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m_Identity = std::make_shared<IdentityEx>(m_Buffer, m_BufferLen); |
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size_t size = m_Identity->GetFullLen (); |
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if (size > m_BufferLen) |
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{ |
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LogPrint (eLogError, "LeaseSet: identity length ", size, " exceeds buffer size ", m_BufferLen); |
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m_IsValid = false; |
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return; |
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} |
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if (m_StoreLeases) |
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{ |
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if (!m_EncryptionKey) m_EncryptionKey = new uint8_t[256]; |
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memcpy (m_EncryptionKey, m_Buffer + size, 256); |
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} |
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size += 256; // encryption key |
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size += m_Identity->GetSigningPublicKeyLen (); // unused signing key |
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uint8_t num = m_Buffer[size]; |
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size++; // num |
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LogPrint (eLogDebug, "LeaseSet: read num=", (int)num); |
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if (!num || num > MAX_NUM_LEASES) |
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{ |
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LogPrint (eLogError, "LeaseSet: incorrect number of leases", (int)num); |
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m_IsValid = false; |
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return; |
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} |
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UpdateLeasesBegin (); |
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// process leases |
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m_ExpirationTime = 0; |
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auto ts = i2p::util::GetMillisecondsSinceEpoch (); |
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const uint8_t * leases = m_Buffer + size; |
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for (int i = 0; i < num; i++) |
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{ |
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Lease lease; |
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lease.tunnelGateway = leases; |
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leases += 32; // gateway |
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lease.tunnelID = bufbe32toh (leases); |
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leases += 4; // tunnel ID |
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lease.endDate = bufbe64toh (leases); |
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leases += 8; // end date |
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UpdateLease (lease, ts); |
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} |
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if (!m_ExpirationTime) |
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{ |
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LogPrint (eLogWarning, "LeaseSet: all leases are expired. Dropped"); |
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m_IsValid = false; |
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return; |
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} |
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m_ExpirationTime += LEASE_ENDDATE_THRESHOLD; |
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UpdateLeasesEnd (); |
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// verify |
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if (verifySignature && !m_Identity->Verify (m_Buffer, leases - m_Buffer, leases)) |
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{ |
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LogPrint (eLogWarning, "LeaseSet: verification failed"); |
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m_IsValid = false; |
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} |
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} |
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void LeaseSet::UpdateLeasesBegin () |
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{ |
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// reset existing leases |
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if (m_StoreLeases) |
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for (auto& it: m_Leases) |
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it->isUpdated = false; |
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else |
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m_Leases.clear (); |
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} |
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void LeaseSet::UpdateLeasesEnd () |
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{ |
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// delete old leases |
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if (m_StoreLeases) |
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{ |
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for (auto it = m_Leases.begin (); it != m_Leases.end ();) |
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{ |
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if (!(*it)->isUpdated) |
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{ |
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(*it)->endDate = 0; // somebody might still hold it |
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m_Leases.erase (it++); |
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} |
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else |
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++it; |
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} |
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} |
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} |
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void LeaseSet::UpdateLease (const Lease& lease, uint64_t ts) |
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{ |
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if (ts < lease.endDate + LEASE_ENDDATE_THRESHOLD) |
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{ |
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if (lease.endDate > m_ExpirationTime) |
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m_ExpirationTime = lease.endDate; |
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if (m_StoreLeases) |
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{ |
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auto ret = m_Leases.insert (std::make_shared<Lease>(lease)); |
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if (!ret.second) (*ret.first)->endDate = lease.endDate; // update existing |
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(*ret.first)->isUpdated = true; |
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// check if lease's gateway is in our netDb |
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if (!netdb.FindRouter (lease.tunnelGateway)) |
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{ |
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// if not found request it |
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LogPrint (eLogInfo, "LeaseSet: Lease's tunnel gateway not found, requesting"); |
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netdb.RequestDestination (lease.tunnelGateway); |
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} |
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} |
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} |
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else |
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LogPrint (eLogWarning, "LeaseSet: Lease is expired already "); |
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} |
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uint64_t LeaseSet::ExtractTimestamp (const uint8_t * buf, size_t len) const |
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{ |
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if (!m_Identity) return 0; |
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size_t size = m_Identity->GetFullLen (); |
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if (size > len) return 0; |
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size += 256; // encryption key |
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size += m_Identity->GetSigningPublicKeyLen (); // unused signing key |
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if (size > len) return 0; |
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uint8_t num = buf[size]; |
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size++; // num |
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if (size + num*LEASE_SIZE > len) return 0; |
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uint64_t timestamp= 0 ; |
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for (int i = 0; i < num; i++) |
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{ |
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size += 36; // gateway (32) + tunnelId(4) |
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auto endDate = bufbe64toh (buf + size); |
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size += 8; // end date |
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if (!timestamp || endDate < timestamp) |
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timestamp = endDate; |
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} |
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return timestamp; |
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} |
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bool LeaseSet::IsNewer (const uint8_t * buf, size_t len) const |
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{ |
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return ExtractTimestamp (buf, len) > ExtractTimestamp (m_Buffer, m_BufferLen); |
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} |
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bool LeaseSet::ExpiresSoon(const uint64_t dlt, const uint64_t fudge) const |
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{ |
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auto now = i2p::util::GetMillisecondsSinceEpoch (); |
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if (fudge) now += rand() % fudge; |
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if (now >= m_ExpirationTime) return true; |
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return m_ExpirationTime - now <= dlt; |
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} |
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const std::vector<std::shared_ptr<const Lease> > LeaseSet::GetNonExpiredLeases (bool withThreshold) const |
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{ |
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return GetNonExpiredLeasesExcluding( [] (const Lease & l) -> bool { return false; }, withThreshold); |
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} |
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const std::vector<std::shared_ptr<const Lease> > LeaseSet::GetNonExpiredLeasesExcluding (LeaseInspectFunc exclude, bool withThreshold) const |
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{ |
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auto ts = i2p::util::GetMillisecondsSinceEpoch (); |
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std::vector<std::shared_ptr<const Lease> > leases; |
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for (const auto& it: m_Leases) |
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{ |
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auto endDate = it->endDate; |
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if (withThreshold) |
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endDate += LEASE_ENDDATE_THRESHOLD; |
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else |
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endDate -= LEASE_ENDDATE_THRESHOLD; |
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if (ts < endDate && !exclude(*it)) |
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leases.push_back (it); |
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} |
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return leases; |
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} |
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bool LeaseSet::HasExpiredLeases () const |
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{ |
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auto ts = i2p::util::GetMillisecondsSinceEpoch (); |
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for (const auto& it: m_Leases) |
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if (ts >= it->endDate) return true; |
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return false; |
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} |
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bool LeaseSet::IsExpired () const |
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{ |
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if (m_StoreLeases && IsEmpty ()) return true; |
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auto ts = i2p::util::GetMillisecondsSinceEpoch (); |
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return ts > m_ExpirationTime; |
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} |
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void LeaseSet::Encrypt (const uint8_t * data, uint8_t * encrypted, BN_CTX * ctx) const |
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{ |
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if (!m_EncryptionKey) return; |
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auto encryptor = m_Identity->CreateEncryptor (m_EncryptionKey); |
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if (encryptor) |
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encryptor->Encrypt (data, encrypted, ctx, true); |
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} |
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void LeaseSet::SetBuffer (const uint8_t * buf, size_t len) |
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{ |
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if (m_Buffer) delete[] m_Buffer; |
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m_Buffer = new uint8_t[len]; |
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m_BufferLen = len; |
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memcpy (m_Buffer, buf, len); |
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} |
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LeaseSet2::LeaseSet2 (uint8_t storeType, const uint8_t * buf, size_t len, bool storeLeases): |
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LeaseSet (storeLeases), m_StoreType (storeType) |
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{ |
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SetBuffer (buf, len); |
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if (storeType == NETDB_STORE_TYPE_ENCRYPTED_LEASESET2) |
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ReadFromBufferEncrypted (buf, len, nullptr); |
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else |
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ReadFromBuffer (buf, len); |
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} |
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LeaseSet2::LeaseSet2 (const uint8_t * buf, size_t len, std::shared_ptr<const IdentityEx> identity): |
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LeaseSet (true), m_StoreType (NETDB_STORE_TYPE_ENCRYPTED_LEASESET2) |
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{ |
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ReadFromBufferEncrypted (buf, len, identity); |
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} |
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void LeaseSet2::Update (const uint8_t * buf, size_t len, bool verifySignature) |
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{ |
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SetBuffer (buf, len); |
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if (GetStoreType () != NETDB_STORE_TYPE_ENCRYPTED_LEASESET2) |
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ReadFromBuffer (buf, len, false, verifySignature); |
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// TODO: implement encrypted |
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} |
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void LeaseSet2::ReadFromBuffer (const uint8_t * buf, size_t len, bool readIdentity, bool verifySignature) |
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{ |
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// standard LS2 header |
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std::shared_ptr<const IdentityEx> identity; |
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if (readIdentity) |
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{ |
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identity = std::make_shared<IdentityEx>(buf, len); |
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SetIdentity (identity); |
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} |
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else |
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identity = GetIdentity (); |
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size_t offset = identity->GetFullLen (); |
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if (offset + 8 >= len) return; |
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m_PublishedTimestamp = bufbe32toh (buf + offset); offset += 4; // published timestamp (seconds) |
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uint16_t expires = bufbe16toh (buf + offset); offset += 2; // expires (seconds) |
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SetExpirationTime ((m_PublishedTimestamp + expires)*1000LL); // in milliseconds |
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uint16_t flags = bufbe16toh (buf + offset); offset += 2; // flags |
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if (flags & LEASESET2_FLAG_OFFLINE_KEYS) |
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{ |
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// transient key |
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m_TransientVerifier = ProcessOfflineSignature (identity, buf, len, offset); |
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if (!m_TransientVerifier) |
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{ |
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LogPrint (eLogError, "LeaseSet2: offline signature failed"); |
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return; |
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} |
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} |
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// type specific part |
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size_t s = 0; |
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switch (m_StoreType) |
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{ |
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case NETDB_STORE_TYPE_STANDARD_LEASESET2: |
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s = ReadStandardLS2TypeSpecificPart (buf + offset, len - offset); |
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break; |
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case NETDB_STORE_TYPE_META_LEASESET2: |
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s = ReadMetaLS2TypeSpecificPart (buf + offset, len - offset); |
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break; |
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default: |
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LogPrint (eLogWarning, "LeaseSet2: Unexpected store type ", (int)m_StoreType); |
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} |
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if (!s) return; |
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offset += s; |
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if (verifySignature || m_TransientVerifier) |
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{ |
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// verify signature |
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bool verified = m_TransientVerifier ? VerifySignature (m_TransientVerifier, buf, len, offset) : |
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VerifySignature (identity, buf, len, offset); |
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SetIsValid (verified); |
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} |
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} |
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template<typename Verifier> |
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bool LeaseSet2::VerifySignature (Verifier& verifier, const uint8_t * buf, size_t len, size_t signatureOffset) |
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{ |
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if (signatureOffset + verifier->GetSignatureLen () > len) return false; |
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// we assume buf inside DatabaseStore message, so buf[-1] is valid memory |
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// change it for signature verification, and restore back |
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uint8_t c = buf[-1]; |
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const_cast<uint8_t *>(buf)[-1] = m_StoreType; |
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bool verified = verifier->Verify (buf - 1, signatureOffset + 1, buf + signatureOffset); |
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const_cast<uint8_t *>(buf)[-1] = c; |
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if (!verified) |
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LogPrint (eLogWarning, "LeaseSet2: verification failed"); |
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return verified; |
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} |
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size_t LeaseSet2::ReadStandardLS2TypeSpecificPart (const uint8_t * buf, size_t len) |
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{ |
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size_t offset = 0; |
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// properties |
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uint16_t propertiesLen = bufbe16toh (buf + offset); offset += 2; |
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offset += propertiesLen; // skip for now. TODO: implement properties |
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if (offset + 1 >= len) return 0; |
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// key sections |
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uint16_t currentKeyType = 0; |
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int numKeySections = buf[offset]; offset++; |
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for (int i = 0; i < numKeySections; i++) |
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{ |
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uint16_t keyType = bufbe16toh (buf + offset); offset += 2; // encryption key type |
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if (offset + 2 >= len) return 0; |
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uint16_t encryptionKeyLen = bufbe16toh (buf + offset); offset += 2; |
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if (offset + encryptionKeyLen >= len) return 0; |
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if (IsStoreLeases ()) // create encryptor with leases only |
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{ |
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// we pick first valid key, higher key type has higher priority 4-1-0 |
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// if two keys with of the same type, pick first |
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auto encryptor = i2p::data::IdentityEx::CreateEncryptor (keyType, buf + offset); |
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if (encryptor && (!m_Encryptor || keyType > currentKeyType)) |
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{ |
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m_Encryptor = encryptor; // TODO: atomic |
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currentKeyType = keyType; |
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} |
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} |
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offset += encryptionKeyLen; |
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} |
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// leases |
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if (offset + 1 >= len) return 0; |
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int numLeases = buf[offset]; offset++; |
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auto ts = i2p::util::GetMillisecondsSinceEpoch (); |
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if (IsStoreLeases ()) |
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{ |
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UpdateLeasesBegin (); |
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for (int i = 0; i < numLeases; i++) |
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{ |
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if (offset + LEASE2_SIZE > len) return 0; |
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Lease lease; |
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lease.tunnelGateway = buf + offset; offset += 32; // gateway |
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lease.tunnelID = bufbe32toh (buf + offset); offset += 4; // tunnel ID |
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lease.endDate = bufbe32toh (buf + offset)*1000LL; offset += 4; // end date |
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UpdateLease (lease, ts); |
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} |
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UpdateLeasesEnd (); |
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} |
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else |
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offset += numLeases*LEASE2_SIZE; // 40 bytes per lease |
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return offset; |
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} |
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size_t LeaseSet2::ReadMetaLS2TypeSpecificPart (const uint8_t * buf, size_t len) |
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{ |
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size_t offset = 0; |
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// properties |
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uint16_t propertiesLen = bufbe16toh (buf + offset); offset += 2; |
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offset += propertiesLen; // skip for now. TODO: implement properties |
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// entries |
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if (offset + 1 >= len) return 0; |
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int numEntries = buf[offset]; offset++; |
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for (int i = 0; i < numEntries; i++) |
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{ |
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if (offset + 40 >= len) return 0; |
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offset += 32; // hash |
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offset += 3; // flags |
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offset += 1; // cost |
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offset += 4; // expires |
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} |
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// revocations |
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if (offset + 1 >= len) return 0; |
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int numRevocations = buf[offset]; offset++; |
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for (int i = 0; i < numRevocations; i++) |
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{ |
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if (offset + 32 > len) return 0; |
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offset += 32; // hash |
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} |
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return offset; |
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} |
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void LeaseSet2::ReadFromBufferEncrypted (const uint8_t * buf, size_t len, std::shared_ptr<const IdentityEx> identity) |
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{ |
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size_t offset = 0; |
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// blinded key |
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if (len < 2) return; |
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const uint8_t * stA1 = buf + offset; // stA1 = blinded signature type, 2 bytes big endian |
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uint16_t blindedKeyType = bufbe16toh (stA1); offset += 2; |
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std::unique_ptr<i2p::crypto::Verifier> blindedVerifier (i2p::data::IdentityEx::CreateVerifier (blindedKeyType)); |
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if (!blindedVerifier) return; |
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auto blindedKeyLen = blindedVerifier->GetPublicKeyLen (); |
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if (offset + blindedKeyLen >= len) return; |
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const uint8_t * blindedPublicKey = buf + offset; |
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blindedVerifier->SetPublicKey (blindedPublicKey); offset += blindedKeyLen; |
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// expiration |
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if (offset + 8 >= len) return; |
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const uint8_t * publishedTimestamp = buf + offset; |
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m_PublishedTimestamp = bufbe32toh (publishedTimestamp); offset += 4; // published timestamp (seconds) |
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uint16_t expires = bufbe16toh (buf + offset); offset += 2; // expires (seconds) |
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SetExpirationTime ((m_PublishedTimestamp + expires)*1000LL); // in milliseconds |
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uint16_t flags = bufbe16toh (buf + offset); offset += 2; // flags |
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if (flags & LEASESET2_FLAG_OFFLINE_KEYS) |
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{ |
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// transient key |
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m_TransientVerifier = ProcessOfflineSignature (blindedVerifier, buf, len, offset); |
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if (!m_TransientVerifier) |
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{ |
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LogPrint (eLogError, "LeaseSet2: offline signature failed"); |
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return; |
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} |
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} |
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// outer ciphertext |
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if (offset + 2 > len) return; |
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uint16_t lenOuterCiphertext = bufbe16toh (buf + offset); offset += 2; |
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const uint8_t * outerCiphertext = buf + offset; |
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offset += lenOuterCiphertext; |
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// verify signature |
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bool verified = m_TransientVerifier ? VerifySignature (m_TransientVerifier, buf, len, offset) : |
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VerifySignature (blindedVerifier, buf, len, offset); |
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SetIsValid (verified); |
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// handle ciphertext |
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if (verified && identity && lenOuterCiphertext >= 32) |
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{ |
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SetIsValid (false); // we must verify it again in Layer 2 |
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if (blindedKeyType == i2p::data::SIGNING_KEY_TYPE_REDDSA_SHA512_ED25519) |
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{ |
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// verify blinding |
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char date[9]; |
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i2p::util::GetCurrentDate (date); |
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uint8_t blinded[32]; |
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BlindPublicKey (identity, date, blindedKeyType, blinded); |
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if (memcmp (blindedPublicKey, blinded, 32)) |
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{ |
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LogPrint (eLogError, "LeaseSet2: blinded public key doesn't match"); |
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return; |
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} |
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} |
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// credentials |
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uint8_t credential[32], subcredential[36]; |
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// A = destination's signing public key |
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// stA = signature type of A, 2 bytes big endian |
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uint16_t stA = htobe16 (identity->GetSigningKeyType ()); |
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// credential = H("credential", A || stA || stA1) |
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H ("credential", { {identity->GetSigningPublicKeyBuffer (), identity->GetSigningPublicKeyLen ()}, {(const uint8_t *)&stA, 2}, {stA1, 2} }, credential); |
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// subcredential = H("subcredential", credential || blindedPublicKey) |
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H ("subcredential", { {credential, 32}, {blindedPublicKey, blindedKeyLen} }, subcredential); |
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// outer key |
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// outerInput = subcredential || publishedTimestamp |
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memcpy (subcredential + 32, publishedTimestamp, 4); |
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// outerSalt = outerCiphertext[0:32] |
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// keys = HKDF(outerSalt, outerInput, "ELS2_L1K", 44) |
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uint8_t keys[64]; // 44 bytes actual data |
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i2p::crypto::HKDF (outerCiphertext, subcredential, 36, "ELS2_L1K", keys); |
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// decrypt Layer 1 |
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// outerKey = keys[0:31] |
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// outerIV = keys[32:43] |
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size_t lenOuterPlaintext = lenOuterCiphertext - 32; |
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std::vector<uint8_t> outerPlainText (lenOuterPlaintext); |
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i2p::crypto::ChaCha20 (outerCiphertext + 32, lenOuterPlaintext, keys, keys + 32, outerPlainText.data ()); |
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// inner key |
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// innerSalt = innerCiphertext[0:32] |
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// keys = HKDF(innerSalt, innerInput, "ELS2_L2K", 44) |
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// skip 1 byte flags |
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i2p::crypto::HKDF (outerPlainText.data () + 1, subcredential, 36, "ELS2_L2K", keys); // no authCookie |
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// decrypt Layer 2 |
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// innerKey = keys[0:31] |
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// innerIV = keys[32:43] |
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size_t lenInnerPlaintext = lenOuterPlaintext - 32 - 1; |
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std::vector<uint8_t> innerPlainText (lenInnerPlaintext); |
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i2p::crypto::ChaCha20 (outerPlainText.data () + 32 + 1, lenInnerPlaintext, keys, keys + 32, innerPlainText.data ()); |
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if (innerPlainText[0] == NETDB_STORE_TYPE_STANDARD_LEASESET2 || innerPlainText[0] == NETDB_STORE_TYPE_META_LEASESET2) |
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{ |
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// override store type and buffer |
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m_StoreType = innerPlainText[0]; |
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SetBuffer (innerPlainText.data () + 1, lenInnerPlaintext - 1); |
|
// parse and verify Layer 2 |
|
ReadFromBuffer (innerPlainText.data () + 1, lenInnerPlaintext - 1); |
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} |
|
else |
|
LogPrint (eLogError, "LeaseSet2: unxpected LeaseSet type ", (int)innerPlainText[0], " inside encrypted LeaseSet"); |
|
} |
|
} |
|
|
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void LeaseSet2::H (const std::string& p, const std::vector<std::pair<const uint8_t *, size_t> >& bufs, uint8_t * hash) |
|
{ |
|
SHA256_CTX ctx; |
|
SHA256_Init (&ctx); |
|
SHA256_Update (&ctx, p.c_str (), p.length ()); |
|
for (const auto& it: bufs) |
|
SHA256_Update (&ctx, it.first, it.second); |
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SHA256_Final (hash, &ctx); |
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} |
|
|
|
void LeaseSet2::BlindPublicKey (std::shared_ptr<const IdentityEx> identity, const char * date, SigningKeyType blindedKeyType, uint8_t * blindedKey) |
|
{ |
|
uint16_t stA = htobe16 (identity->GetSigningKeyType ()), stA1 = htobe16 (blindedKeyType); |
|
uint8_t salt[32], seed[64]; |
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//seed = HKDF(H("I2PGenerateAlpha", keydata), datestring || secret, "i2pblinding1", 64) |
|
H ("I2PGenerateAlpha", { {identity->GetSigningPublicKeyBuffer (), identity->GetSigningPublicKeyLen ()}, {(const uint8_t *)&stA, 2}, {(const uint8_t *)&stA1, 2} }, salt); |
|
i2p::crypto::HKDF (salt, (const uint8_t *)date, 8, "i2pblinding1", seed); |
|
i2p::crypto::GetEd25519 ()->BlindPublicKey (identity->GetSigningPublicKeyBuffer (), seed, blindedKey); |
|
} |
|
|
|
void LeaseSet2::CalculateStoreHash (std::shared_ptr<const IdentityEx> identity, SigningKeyType blindedKeyType, i2p::data::IdentHash& hash) |
|
{ |
|
if (blindedKeyType != i2p::data::SIGNING_KEY_TYPE_REDDSA_SHA512_ED25519 && |
|
blindedKeyType != SIGNING_KEY_TYPE_EDDSA_SHA512_ED25519) |
|
{ |
|
LogPrint (eLogError, "LeaseSet2: blinded key type ", (int)blindedKeyType, " is not supported"); |
|
return; |
|
} |
|
char date[9]; |
|
i2p::util::GetCurrentDate (date); |
|
uint8_t blinded[32]; |
|
BlindPublicKey (identity, date, blindedKeyType, blinded); |
|
auto stA1 = htobe16 (blindedKeyType); |
|
SHA256_CTX ctx; |
|
SHA256_Init (&ctx); |
|
SHA256_Update (&ctx, (const uint8_t *)&stA1, 2); |
|
SHA256_Update (&ctx, blinded, 32); |
|
SHA256_Final ((uint8_t *)hash, &ctx); |
|
} |
|
|
|
void LeaseSet2::Encrypt (const uint8_t * data, uint8_t * encrypted, BN_CTX * ctx) const |
|
{ |
|
auto encryptor = m_Encryptor; // TODO: atomic |
|
if (encryptor) |
|
encryptor->Encrypt (data, encrypted, ctx, true); |
|
} |
|
|
|
uint64_t LeaseSet2::ExtractTimestamp (const uint8_t * buf, size_t len) const |
|
{ |
|
if (len < 8) return 0; |
|
if (m_StoreType == NETDB_STORE_TYPE_ENCRYPTED_LEASESET2) |
|
{ |
|
// encrypted LS2 |
|
size_t offset = 0; |
|
uint16_t blindedKeyType = bufbe16toh (buf + offset); offset += 2; |
|
std::unique_ptr<i2p::crypto::Verifier> blindedVerifier (i2p::data::IdentityEx::CreateVerifier (blindedKeyType)); |
|
if (!blindedVerifier) return 0 ; |
|
auto blindedKeyLen = blindedVerifier->GetPublicKeyLen (); |
|
if (offset + blindedKeyLen + 6 >= len) return 0; |
|
offset += blindedKeyLen; |
|
uint32_t timestamp = bufbe32toh (buf + offset); offset += 4; |
|
uint16_t expires = bufbe16toh (buf + offset); offset += 2; |
|
return (timestamp + expires)* 1000LL; |
|
} |
|
else |
|
{ |
|
auto identity = GetIdentity (); |
|
if (!identity) return 0; |
|
size_t offset = identity->GetFullLen (); |
|
if (offset + 6 >= len) return 0; |
|
uint32_t timestamp = bufbe32toh (buf + offset); offset += 4; |
|
uint16_t expires = bufbe16toh (buf + offset); offset += 2; |
|
return (timestamp + expires)* 1000LL; |
|
} |
|
} |
|
|
|
LocalLeaseSet::LocalLeaseSet (std::shared_ptr<const IdentityEx> identity, const uint8_t * encryptionPublicKey, std::vector<std::shared_ptr<i2p::tunnel::InboundTunnel> > tunnels): |
|
m_ExpirationTime (0), m_Identity (identity) |
|
{ |
|
int num = tunnels.size (); |
|
if (num > MAX_NUM_LEASES) num = MAX_NUM_LEASES; |
|
// identity |
|
auto signingKeyLen = m_Identity->GetSigningPublicKeyLen (); |
|
m_BufferLen = m_Identity->GetFullLen () + 256 + signingKeyLen + 1 + num*LEASE_SIZE + m_Identity->GetSignatureLen (); |
|
m_Buffer = new uint8_t[m_BufferLen]; |
|
auto offset = m_Identity->ToBuffer (m_Buffer, m_BufferLen); |
|
memcpy (m_Buffer + offset, encryptionPublicKey, 256); |
|
offset += 256; |
|
memset (m_Buffer + offset, 0, signingKeyLen); |
|
offset += signingKeyLen; |
|
// num leases |
|
m_Buffer[offset] = num; |
|
offset++; |
|
// leases |
|
m_Leases = m_Buffer + offset; |
|
auto currentTime = i2p::util::GetMillisecondsSinceEpoch (); |
|
for (int i = 0; i < num; i++) |
|
{ |
|
memcpy (m_Buffer + offset, tunnels[i]->GetNextIdentHash (), 32); |
|
offset += 32; // gateway id |
|
htobe32buf (m_Buffer + offset, tunnels[i]->GetNextTunnelID ()); |
|
offset += 4; // tunnel id |
|
uint64_t ts = tunnels[i]->GetCreationTime () + i2p::tunnel::TUNNEL_EXPIRATION_TIMEOUT - i2p::tunnel::TUNNEL_EXPIRATION_THRESHOLD; // 1 minute before expiration |
|
ts *= 1000; // in milliseconds |
|
if (ts > m_ExpirationTime) m_ExpirationTime = ts; |
|
// make sure leaseset is newer than previous, but adding some time to expiration date |
|
ts += (currentTime - tunnels[i]->GetCreationTime ()*1000LL)*2/i2p::tunnel::TUNNEL_EXPIRATION_TIMEOUT; // up to 2 secs |
|
htobe64buf (m_Buffer + offset, ts); |
|
offset += 8; // end date |
|
} |
|
// we don't sign it yet. must be signed later on |
|
} |
|
|
|
LocalLeaseSet::LocalLeaseSet (std::shared_ptr<const IdentityEx> identity, const uint8_t * buf, size_t len): |
|
m_ExpirationTime (0), m_Identity (identity) |
|
{ |
|
if (buf) |
|
{ |
|
m_BufferLen = len; |
|
m_Buffer = new uint8_t[m_BufferLen]; |
|
memcpy (m_Buffer, buf, len); |
|
} |
|
else |
|
{ |
|
m_Buffer = nullptr; |
|
m_BufferLen = 0; |
|
} |
|
} |
|
|
|
bool LocalLeaseSet::IsExpired () const |
|
{ |
|
auto ts = i2p::util::GetMillisecondsSinceEpoch (); |
|
return ts > m_ExpirationTime; |
|
} |
|
|
|
bool LeaseSetBufferValidate(const uint8_t * ptr, size_t sz, uint64_t & expires) |
|
{ |
|
IdentityEx ident(ptr, sz); |
|
size_t size = ident.GetFullLen (); |
|
if (size > sz) |
|
{ |
|
LogPrint (eLogError, "LeaseSet: identity length ", size, " exceeds buffer size ", sz); |
|
return false; |
|
} |
|
// encryption key |
|
size += 256; |
|
// signing key (unused) |
|
size += ident.GetSigningPublicKeyLen (); |
|
uint8_t numLeases = ptr[size]; |
|
++size; |
|
if (!numLeases || numLeases > MAX_NUM_LEASES) |
|
{ |
|
LogPrint (eLogError, "LeaseSet: incorrect number of leases", (int)numLeases); |
|
return false; |
|
} |
|
const uint8_t * leases = ptr + size; |
|
expires = 0; |
|
/** find lease with the max expiration timestamp */ |
|
for (int i = 0; i < numLeases; i++) |
|
{ |
|
leases += 36; // gateway + tunnel ID |
|
uint64_t endDate = bufbe64toh (leases); |
|
leases += 8; // end date |
|
if(endDate > expires) |
|
expires = endDate; |
|
} |
|
return ident.Verify(ptr, leases - ptr, leases); |
|
} |
|
|
|
LocalLeaseSet2::LocalLeaseSet2 (uint8_t storeType, const i2p::data::PrivateKeys& keys, |
|
uint16_t keyType, uint16_t keyLen, const uint8_t * encryptionPublicKey, |
|
std::vector<std::shared_ptr<i2p::tunnel::InboundTunnel> > tunnels): |
|
LocalLeaseSet (keys.GetPublic (), nullptr, 0) |
|
{ |
|
auto identity = keys.GetPublic (); |
|
// assume standard LS2 |
|
int num = tunnels.size (); |
|
if (num > MAX_NUM_LEASES) num = MAX_NUM_LEASES; |
|
m_BufferLen = identity->GetFullLen () + 4/*published*/ + 2/*expires*/ + 2/*flag*/ + 2/*properties len*/ + |
|
1/*num keys*/ + 2/*key type*/ + 2/*key len*/ + keyLen/*key*/ + 1/*num leases*/ + num*LEASE2_SIZE + keys.GetSignatureLen (); |
|
uint16_t flags = 0; |
|
if (keys.IsOfflineSignature ()) |
|
{ |
|
flags |= LEASESET2_FLAG_OFFLINE_KEYS; |
|
m_BufferLen += keys.GetOfflineSignature ().size (); |
|
} |
|
|
|
m_Buffer = new uint8_t[m_BufferLen + 1]; |
|
m_Buffer[0] = storeType; |
|
// LS2 header |
|
auto offset = identity->ToBuffer (m_Buffer + 1, m_BufferLen) + 1; |
|
auto timestamp = i2p::util::GetSecondsSinceEpoch (); |
|
htobe32buf (m_Buffer + offset, timestamp); offset += 4; // published timestamp (seconds) |
|
uint8_t * expiresBuf = m_Buffer + offset; offset += 2; // expires, fill later |
|
htobe16buf (m_Buffer + offset, flags); offset += 2; // flags |
|
if (keys.IsOfflineSignature ()) |
|
{ |
|
// offline signature |
|
const auto& offlineSignature = keys.GetOfflineSignature (); |
|
memcpy (m_Buffer + offset, offlineSignature.data (), offlineSignature.size ()); |
|
offset += offlineSignature.size (); |
|
} |
|
htobe16buf (m_Buffer + offset, 0); offset += 2; // properties len |
|
// keys |
|
m_Buffer[offset] = 1; offset++; // 1 key |
|
htobe16buf (m_Buffer + offset, keyType); offset += 2; // key type |
|
htobe16buf (m_Buffer + offset, keyLen); offset += 2; // key len |
|
memcpy (m_Buffer + offset, encryptionPublicKey, keyLen); offset += keyLen; // key |
|
// leases |
|
uint32_t expirationTime = 0; // in seconds |
|
m_Buffer[offset] = num; offset++; // num leases |
|
for (int i = 0; i < num; i++) |
|
{ |
|
memcpy (m_Buffer + offset, tunnels[i]->GetNextIdentHash (), 32); |
|
offset += 32; // gateway id |
|
htobe32buf (m_Buffer + offset, tunnels[i]->GetNextTunnelID ()); |
|
offset += 4; // tunnel id |
|
auto ts = tunnels[i]->GetCreationTime () + i2p::tunnel::TUNNEL_EXPIRATION_TIMEOUT - i2p::tunnel::TUNNEL_EXPIRATION_THRESHOLD; // in seconds, 1 minute before expiration |
|
if (ts > expirationTime) expirationTime = ts; |
|
htobe32buf (m_Buffer + offset, ts); |
|
offset += 4; // end date |
|
} |
|
// update expiration |
|
SetExpirationTime (expirationTime*1000LL); |
|
auto expires = expirationTime - timestamp; |
|
htobe16buf (expiresBuf, expires > 0 ? expires : 0); |
|
// sign |
|
keys.Sign (m_Buffer, offset, m_Buffer + offset); // LS + leading store type |
|
} |
|
|
|
LocalLeaseSet2::LocalLeaseSet2 (uint8_t storeType, std::shared_ptr<const IdentityEx> identity, const uint8_t * buf, size_t len): |
|
LocalLeaseSet (identity, nullptr, 0) |
|
{ |
|
m_BufferLen = len; |
|
m_Buffer = new uint8_t[m_BufferLen + 1]; |
|
memcpy (m_Buffer + 1, buf, len); |
|
m_Buffer[0] = storeType; |
|
} |
|
} |
|
}
|
|
|